Document Z8yn7jwxODG1jGGDxRra2y2Q7

American Society of Heating and Ventilating Engineers Guide, 1936 Table 6. Typical Calculation of Pipe Sizes on Down-Feed Riser with Flush Valve Water-Closets and Urinals (Riser No. 2. Fig. 4) Floor of Bldg. Fixtures on Floor Gpm per Fixture Maximum Gpm on Floor Maximum Gpm on Riser Probable Use (per cent) Probable Demand Riser Gpm Allowable Drop Lb per 100 Ft 1st 1 W. C. 45 2nd 2 W. C. 45 1 U. 30 1 Lav. 3 45 45 100 90 30 3 45 30 123 168 58 98 30 3rd 4 W. C. 45 2 U. 30 3 Lav. 3 180 60 9 249 417 ' 31 130 30 4th 4 W. C. 45 . 180 2 U. 30 60 3 Lav. 3 9 249 666 5th 6 W. C. 45 4 Lav. 3 270 . 12 24 160 30 6th 6W.C. 45 4 Lav. 3 282 270 12 948 19 180 30 282 1230 16 ' 196 30 7th 6 W. C. 45 4 Lav. 3 270 12 282 1512 14 .211 30 Sth . 6 W. C. 4 Lav. 45 .3 270 12 282 1794 12 215 2 Pipe Size In. IK IK 2 2 2 2K 2K 4 Then the allowable drop per 100 ft will be 25.61b X 300 100 8.5 lb and the sizes shown in Fig. 5 are based on this amount of drop. Of course the other risers will have.the same maximum flows at the bottom as they formerly had at the top, namely 215 and 122 gal, respectively, for Risers Nos. 2 and 3. Combining these maximum flows in the same man ner as pursued in the down-feed system it is seen that the maximum flow between Riser No. 2 and Riser No. 3 is 255 gpm, and between Riser No. 3 and the street main, 282 gpm which at a drop of 8.5 lb gives the main sizes indicated. It will be noted that in determin ing the maximum flow in an up-feed riser it is necessary to begin at the top .floor and work down instead of beginning at the bottom floor and working up as was done in the down-feed sizing. SIZING UP-FEED AND DOWN-FEED HOT WATER SYSTEMS Hot water supply systems, when of the circulating type, have a few differences to be considered although the same general principles of sizing apply to these lines as to the cold water lines. Owing to the fact that there are no flush valves on the hot water piping and also because many plumbing fixtures have no hot water connections, the sizes of the hot water piping in general will be considerably less than the cold water piping in the same building. On the other hand it is almost invariably Chapter 35--Water Supply Piping and Water Heating Table 7. Typical Calculation of Pipe Sizes on Down-Feed Riser with Flush Valve Water-Closets and Urinals (Riser No. S. Fig. 4) FLOOR OF Bldg. 1st 2nd 3rd 4th 5th 6th 7th 8th Fixtures ON Floor 1 s. s. 3 W. C. 1 Lav. 2 Lav. 3 W. C. 1 Lav. 1 S. S. 1 s. s. 1 s. s. 1 s. s. 1 s. s. Gpm per Fixture 4 45 3 3 45 3 4 4 4 4 4 Maximum Gpm on Floor Maximum Gpm on Riser Probable Use (per cent) Probable Demand Riser Gpm Allowable Drop Lb per 100 Ft 4 4 100 4 30 135 3 142 63 89 30 138 6 148 135 3 4 290 112 61 90 41 119 30 30 4 294 4 298 4 302 41 120 40 120 40 121 30 30 30 4 306 40 122 2 Pipe Size In. K IK IK 2 2 2 2 3 required that a gravity circulation be kept up in such hot water lines and this often has a considerable influence on the size. There are three methods of arranging circulation lines, as follow: 1. By using the plain up-feed with a return carried back from the top of the riser and paralleling it. 2. By carrying a supply riser up in one location thus supplying fixtures on up-feed, then crossing over at the top and coming down past another collection of fixtures and supplying these by a down-feed. 3. By carrying all of the water to the top of the building and dropping risers wherever needed, feeding all hot water on a down-feed system. Table 8. Size of Distribution Main for Down-Feed Systems (See Fig. 4) Maximum Gpm Riser Maximum Gpm Main Probable . Use (per cent) Probable Gpm Allowable Drop Lb per 100 Ft Size of Main In. 1 1038 1038 2 1794 2832 3 306 3138 18 187 9 255 9 282 2 2 2 4 4 5 In the first instance the up-feed riser may be sized for the same pressure drop as used for the cold water riser and, from the top of the riser just below the top fixture connection, a return circulation line may be carried back to the main return line in the basement and connected through a' check valve, set on a 45-deg angle, and a gate valve; these return circu-. lation lines should never be less than % in., and on the farther half of the risers, not. less than 1 in. to favor circulation in the far end. Typical top and bottom connections for such risers are shown in Fig. 6. 641